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Identification In Vitro Testing and Molecular Docking Studies of Microginins’ Mechanism of Angiotensin-Converting Enzyme Inhibition

机译:微球蛋白对血管紧张素转化酶抑制作用机理的鉴定体外测试和分子对接研究

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摘要

Cyanobacteria are able to produce a wide range of secondary metabolites, including toxins and protease inhibitors, with diverse biological activities. Microginins are small linear peptides biosynthesized by cyanobacteria species that act against proteases. The aim of this study was to isolate and identify microginins produced by the LTPNA08 strain of Microcystis aeruginosa, as well as to verify their potential to inhibit angiotensin-converting enzyme (ACE; EC. 3.4.15.1) using in vitro and in silico methods. The fractionation of cyanobacterial extracts was performed by liquid chromatography and the presence of microginins was monitored by both LC-MS and an ACE inhibition assay. Enzyme inhibition was assayed by ACE with hippuryl-histidyl-leucine as the substrate; monitoring of hippuric acid was performed by HPLC-DAD. Isolated microginins were confirmed by mass spectrometry and were used to carry out the enzymatic assay. Molecular docking was used to evaluate microginin 770 (MG 770) and captopril (positive control), in order to predict similar binding interactions and determine the inhibitory action of ACE. The enzyme assay confirmed that MG 770 can efficiently inhibit ACE, with an IC50 equivalent to other microginins. MG 770 presented with comparable interactions with ACE, having features in common with commercial inhibitors such as captopril and enalaprilate, which are frequently used in the treatment of hypertension in humans.
机译:蓝细菌能够产生具有多种生物学活性的多种次级代谢产物,包括毒素和蛋白酶抑制剂。微精蛋白是由对蛋白酶起作用的蓝细菌物种生物合成的小的线性肽。这项研究的目的是分离和鉴定由铜绿微囊藻的LTPNA08菌株产生的微ginins,以及使用体外和计算机方法验证其抑制血管紧张素转化酶(ACE; EC。3.4.15.1)的潜力。通过液相色谱法对蓝细菌提取物进行分级分离,并通过LC-MS和ACE抑制分析监测微球蛋白的存在。 ACE以马来酰-组氨酸-亮氨酸为底物测定酶抑制作用。通过HPLC-DAD监测马尿酸。通过质谱法确认分离出的微量人参皂苷,并用于进行酶促测定。为了预测相似的结合相互作用并确定ACE的抑制作用,使用了分子对接技术来评估微球蛋白770(MG 770)和卡托普利(阳性对照)。酶分析证实,MG 770可以有效抑制ACE,其IC50值与其他微ginins相当。 MG 770与ACE具有可比的相互作用,具有与商用抑制剂(如卡托普利和依那普利酯)相同的特征,这些抑制剂经常用于治疗人类高血压。

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